Cold Quasar Investigation: Comparing Star Formation Rates to Black Hole Growth
arXiv:2403.07196 · doi:10.1093/mnras/stae465
Abstract
Cold quasars are a rare population of luminous, unobscured quasars associated with host galaxies that have a high star formation rate. We aimed to study the host galaxies of sixty four of these cold quasars in order to probe how the supermassive black holes and host galaxies were coevolving. We compiled data from the XXL survey and crossmatched with the VHS, WISE, and HerMES surveys to obtain multiwavelength photometry spanning the Xray to the infrared and including optical spectroscopy. From the data, we calculated the supermassive black hole masses using broad emission from the magnesium II and hydrogen beta lines. We compared this with the stellar mass of the entire galaxy and find that the black holes are significantly more massive than would be predicted by local relations, indicating that the majority of black hole growth precedes the bulk of the the stellar mass formation. In addition to this, we created a spectral energy distribution for each galaxy to calculate the star formation rate. We compared the star formation rate with the black hole accretion rate and find that the stellar mass is rapidly increasing at a relative rate faster than the black hole growth, supporting the picture where the black hole grows first.
9 pages, 4 figures
References in corpus (16)
- The NumPy array: a structure for efficient numerical computation
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- The Current Status of Galaxy Formation
- AGN Populations in Large Volume X-ray Surveys: Photometric Redshifts and Population Types found in the Stripe 82X Survey
- NuSTAR observations of WISE J1036+0449, a Galaxy at z obscured by hot dust
- Comparison of Stellar Population Model Predictions Using Optical and Infrared Spectroscopy
- CO Emission in Infrared-Selected Active Galactic Nuclei
- The Infrared Emission and Vigorous Star Formation of Low-redshift Quasars
- AGN feedback on molecular gas reservoirs in quasars at 2.4
- Stellar feedback-regulated black hole growth: driving factors from nuclear to halo scales
- The impact of ionised outflows from z2.5 quasars is not through instantaneous in-situ quenching: the evidence from ALMA and VLT/SINFONI
- Enhanced Star Formation Efficiency in the Central Regions of Nearby Quasars Hosts
- Accretion History of AGN: Estimating the Host Galaxy Properties in X-ray Luminous AGN from z=0-3
- Black hole feedback and the evolution of massive early-type galaxies
- UV-FIR SED modeling of AGN in IR-luminous galaxies up to z~2.5: Understanding the effects of torus models